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Assessing clean vehicle systems under constraints of freshwater resource

机译:在淡水资源约束下评估清洁车辆系统

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The development and deployment of clean vehicles bring great potential of reducing transportation greenhouse gas (GHG) emission and dependency on fossil fuels. The net GHG reduction through clean vehicle systems is tightly linked to the electricity grid mix (for electrical cars and plugin hybrids) and fueling strategy (for cars using alternative fuels). Natural resources may also pose constraints on clean vehicle system development, considering regional water scarcity and agriculture land availability. To understand these interrelationships and support decision making, we are developing a modeling framework to evaluate and project water and land demand from clean vehicle system development under different scenarios and ultimately optimize resource allocation to maximize GHG reduction. From both national and regional scale, this research evaluates a variety of clean vehicle technologies including renewable fuels and electrification to ensure that the combination of these technologies will reduce GHG emissions from a life cycle perspective. In addition, this research identifies and evaluates constraints posed by critical natural resources to meet clean vehicle targets in the U.S. For renewable fuel production, water resources and land will be critical. For low carbon electricity generation, the availability of wind, solar, biomass, geothermal, and land will significantly shape the composition of clean vehicle technologies in different regions. Overall, the goal is to make sure a net life cycle reduction in GHG emissions will be achieved under different scenarios of resource constraints. This paper summarizes data about water resources from both national and regional scale.
机译:清洁车辆的开发和部署具有降低运输温室气体(GHG)排放和依赖化石燃料的巨大潜力。通过清洁车辆系统的净温室气体减少与电网混合(用于电动汽车和插件混合动力车)和加油策略(用于使用替代燃料的汽车)紧密相连。根据区域水资源稀缺和农业土地可用性,自然资源也可能对清洁车辆系统开发构成限制。要了解这些相互关系和支持决策,我们正在开发一种建模框架,以评估和项目在不同场景下从清洁车辆系统开发中评估和降落的土地需求,并最终优化资源分配,以最大化GHG减少。从国家和区域规模来看,该研究评估了各种清洁的车辆技术,包括可再生燃料和电气化,以确保这些技术的组合将从生命周期的角度下减少温室气体排放。此外,该研究识别和评估批判性自然资源所带来的限制,以满足美国的清洁车辆目标。对于可再生燃料生产,水资源和土地将是至关重要的。对于低碳发电,风,太阳能,生物质,地热和土地的可用性将大大塑造不同地区清洁车辆技术的组成。总的来说,目标是在不同的资源限制方案下确保GHG排放的净生命周期降低。本文总结了来自国家和区域规模的有关水资源的数据。

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